首页> 外文OA文献 >Nitrogen fixation ability of exopolysaccharide synthesis mutants of Rhizobium sp. strain NGR234 and Rhizobium trifolii is restored by the addition of homologous exopolysaccharides.
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Nitrogen fixation ability of exopolysaccharide synthesis mutants of Rhizobium sp. strain NGR234 and Rhizobium trifolii is restored by the addition of homologous exopolysaccharides.

机译:根瘤菌胞外多糖合成突变体的固氮能力NGR234菌株和三叶根瘤菌通过添加同源胞外多糖得以恢复。

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摘要

Several transposon Tn5-induced mutants of the broad-host-range Rhizobium sp. strain NGR234 produce little or no detectable acidic exopolysaccharide (EPS) and are unable to induce nitrogen-fixing nodules on Leucaena leucocephala var. Peru or siratro plants. The ability of these Exo- mutants to induce functioning nodules on Leucaena plants was restored by coinoculation with a Sym plasmid-cured (Nod- Exo+) derivative of parent strain NGR234, purified EPS from the parent strain, or the oligosaccharide from the EPS. Coinoculation with EPS or related oligosaccharide also resulted in formation of nitrogen-fixing nodules on siratro plants. In addition, an Exo- mutant (ANU437) of Rhizobium trifolii ANU794 was able to form nitrogen-fixing nodules on white clover in the presence of added EPS or related oligosaccharide from R. trifolii ANU843. These results demonstrate that the absence of Rhizobium EPSs can result in failure of effective symbiosis with both temperate and subtropical legumes.
机译:几个转座子Tn5诱导的突变体的广泛宿主范围的根瘤菌sp。 NGR234菌株几乎不产生或未检测到酸性胞外多糖(EPS),并且无法在白叶白桦(Leucaena leucocephala var)上诱导固氮结节。秘鲁或siratro植物。通过与亲本菌株NGR234的Sym质粒固化的(Nod-Exo +)衍生物,亲本菌株的纯化EPS或EPS的寡糖共接种,可以恢复这些Exo突变体在Leucaena植物上诱导功能性根瘤的能力。与EPS或相关寡糖的共接种也导致在Siratro植物上形成固氮根瘤。另外,在添加的三叶红毛猩猩ANU843的EPS或相关寡糖存在下,三叶苜蓿ANU794的Exo突变体(ANU437)能够在白三叶草上形成固氮根瘤。这些结果表明,缺乏根瘤菌EPS可能导致与温带和亚热带豆类的有效共生失败。

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